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Nonlinear Solid Mechanics Bifurcation Theory And Material Instability Davide Bigoni

  • SKU: BELL-2623388
Nonlinear Solid Mechanics Bifurcation Theory And Material Instability Davide Bigoni
$ 31.00 $ 45.00 (-31%)

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Nonlinear Solid Mechanics Bifurcation Theory And Material Instability Davide Bigoni instant download after payment.

Publisher: Cambridge University Press
File Extension: PDF
File size: 20.28 MB
Pages: 550
Author: Davide Bigoni, University of Trento
ISBN: 9781107025417, 1107025419
Language: English
Year: 2012

Product desciption

Nonlinear Solid Mechanics Bifurcation Theory And Material Instability Davide Bigoni by Davide Bigoni, University Of Trento 9781107025417, 1107025419 instant download after payment.

"This book covers solid mechanics for non-linear elastic and elastoplastic materials, describing the behaviour of ductile material subject to extreme mechanical loading and its eventual failure. The book highlights constitutive features to describe the behaviour of frictional materials such as geological media. On the basis of this theory, including large strain and inelastic behaviours, bifurcation and instability are developed with a special focus on the modelling of the emergence of local instabilities such as shear band formation and flutter of a continuum. The former is regarded as a precursor of fracture, while the latter is typical of granular materials. The treatment is complemented with qualitative experiments, illustrations from everyday life and simple examples taken from structural mechanics"--  Read more...
Machine generated contents note: 1. Introduction; 2. Elements of tensor algebra and analysis; 3. Solid mechanics at finite strains; 4. Isotropic nonlinear hyperelasticity; 5. Solutions of simple problems in finitely deformed nonlinear elastic solids; 6. Constitutive equations and anisotropic elasticity; 7. Yield functions with emphasis on pressure-sensitivity; 8. Elastoplastic constitutive equations; 9. Moving discontinuities and boundary value problems; 10. Global conditions of uniqueness and stability; 11. Local conditions for uniqueness and stability; 12. Bifurcation of elastic solids deformed incrementally; 13. Applications of local and global uniqueness and stability criteria to non-associative elastoplasticity; 14. Wave propagation, stability and bifurcation; 15. Post-critical behaviour and multiple shear band formation; 16. A perturbative approach to material instability

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